===================================================================== WARNING: using SINGLE PRECISION, you'd better know what you're doing! ===================================================================== SVN: ------- v. ( ) $Id$ SVN: start.in,v v. 1.1 (2025/03/28 16:06:31) brandenb SVN: run.in,v v. 1.1 (2025/03/28 16:06:31) brandenb initialize_mpicomm: enabled MPI SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ kt_init: KT flux-limited transport enabled; theta= 2.00000000 SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id$ SVN: ------- v. ( ) $Id The verbose level is ip= 14 (ldebug= F ) This is a 1-D run nxgrid, nygrid, nzgrid= 300 1 1 Lx, Ly, Lz= 7.00000000 1.00000000 1.00000000 Vbox= 7.00000000 rsnap: read snapshot var.dat in 3.2134421855163631E-004 seconds setup_slices: slice_position = p setup_slices: ix_loc,iy_loc,iz_loc, (video files) = 4 4 4 units_general: unit_velocity= 1.0000000000000000 units_general: unit_density= 1.0000000000000000 units_general: unit_length= 1.0000000000000000 units_general: unit_magnetic= 3.5449078083038330 units_eos: unit_temperature= 1.2027220775801925E-008 units_eos: cp, lnTT0, cs0, pp0, Rgas= 1.00000000 -1.09861231 0.577350259 0.333333313 1.00000000 alpha_fine = 7.2973525643000000E-003 sigma_Thomson_cgs = 6.6524587321600003E-025 diffusion: div(D*grad(rho)) WARNING: initialize_density: For diffusion energy/momentum correction should use lmassdiff_fix=T! initialize_density: no need to read initial stratification for lanti_shockdiffusion=F. select_eos_variable: Using rho and cs2 viscous force: nu*del2v pde: ENTER SVN: ------- v. ( ) $Id$ duu_dt: SOLVE Bcs for ux, x: < a>, y: < p>, z: < p> Bcs for uy, x: < s>, y: < p>, z: < p> Bcs for uz, x: < s>, y: < p>, z: < p> dlnrho_dt: SOLVE Bcs for lnrho, x: < s>, y: < p>, z: < p> dlnrho_dt: diffrho= 9.99999975E-05 ---it--------t-----------dt---------urms--------ekin--------ethm--------ruxm--------rhom---- 0 0.0000E+00 2.0000E-04 0.0000E+00 0.0000E+00 0.0000E+00 0.0000E+00 4.2174E-01 50 1.0000E-02 2.0000E-04 9.9787E-03 4.6388E-05 0.0000E+00 3.1556E-04 4.2169E-01 100 2.0000E-02 2.0000E-04 1.8574E-02 1.5071E-04 0.0000E+00 6.1663E-04 4.2159E-01 150 3.0000E-02 2.0000E-04 2.5551E-02 2.9024E-04 0.0000E+00 9.0214E-04 4.2145E-01 200 4.0000E-02 2.0000E-04 3.1128E-02 4.4777E-04 0.0000E+00 1.1763E-03 4.2129E-01 250 5.0000E-02 2.0000E-04 3.6085E-02 6.1784E-04 0.0000E+00 1.4437E-03 4.2112E-01 300 6.0000E-02 2.0000E-04 4.0310E-02 7.9296E-04 0.0000E+00 1.7069E-03 4.2095E-01 350 7.0000E-02 2.0000E-04 4.4083E-02 9.6839E-04 0.0000E+00 1.9691E-03 4.2077E-01 400 8.0000E-02 2.0000E-04 4.7681E-02 1.1465E-03 0.0000E+00 2.2304E-03 4.2059E-01 Simulation finished after 401 time-steps Writing final snapshot at time t = 8.0200002350466093E-002 Wall clock time [hours] = 1.413E-04 (+/- 2.7778E-13) Wall clock time/timestep/meshpoint [microsec] = 4.229919 Wall clock time/timestep/local meshpoint [microsec] = 12.68976 Rhs wall clock time/timestep/local meshpoint [microsec] = 4.456012 Maximum used memory per cpu [MBytes] = 22.707 Maximum used memory [MBytes] = 66.816 real 1.01 user 1.74 sys 0.26